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    • 15. 发明专利
    • Electrode for discharge
    • 放电电极
    • JP2006049227A
    • 2006-02-16
    • JP2004231765
    • 2004-08-09
    • Kyoritsu Denki Sangyo Kk共立電器産業株式会社
    • YOSHIMATSU TAKESHIROU
    • H01T19/00A61L9/00A61L9/01A61L9/22B03C3/02B03C3/40B03C3/60H01T19/04H01T23/00
    • PROBLEM TO BE SOLVED: To provide an electrode for discharge having a long service life and high performance by improving durability of the electrode and having high moldability. SOLUTION: This electrode for discharge is characteristically formed of a titanium alloy containing a photocatalyst and a trace of an additive. An example of its composition is shown in table 1. Titanium oxide, tin oxide, niobium oxide, cadmium selenide, cadmium sulfide, tungsten oxide, zinc oxide, indium oxide, silver oxide, manganese oxide, copper oxide, iron oxide, vanadium oxide, titanium hydroxide or zinc hydroxide can be used for the photocatalyst. The addition quantity of the photocatalyst is 4-30 wt.% and preferably 10-25 wt.%. In particular, titanium oxide is practical. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过提高电极的耐久性和高成型性,提供具有长使用寿命和高性能的放电用电极。 解决方案:该放电用电极特征性地由含有光催化剂和微量添加剂的钛合金形成。 二氧化钛,氧化锡,氧化铌,硒化镉,硫化镉,氧化钨,氧化锌,氧化铟,氧化银,氧化锰,氧化铜,氧化铁,氧化钒, 氢氧化钛或氢氧化锌可用于光催化剂。 光催化剂的添加量为4-30重量%,优选为10-25重量%。 特别地,氧化钛是实用的。 版权所有(C)2006,JPO&NCIPI
    • 17. 发明专利
    • Ion generation element and ion generating device having the same
    • 离子发生元件和离子发生装置
    • JP2005149983A
    • 2005-06-09
    • JP2003388087
    • 2003-11-18
    • Sharp Corpシャープ株式会社
    • TOKAI ICHIRO
    • F24F7/00B03C3/02B03C3/40B03C3/60B03C3/66H01J1/304H01T23/00
    • PROBLEM TO BE SOLVED: To provide an ion generating element which can generate ion by field emission and an ion generating device having the same. SOLUTION: The device is provided with an ion generating element 5 using carbon nanotubes 12 and a voltage level setting circuit 2 for outputting an impressing voltage to impress on the ion generating element 5. Based on the impressing voltage given by the voltage level setting circuit 2, a high electric field is generated by the carbon nanotubes 12. Based on the collision and ionization of the electrons with water molecules emitted by the carbon nanotubes 12 by field emission in this high electric field, the ion is generated. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供能够通过场发射产生离子的离子产生元件和具有该离子产生元件的离子产生装置。 解决方案:该装置设置有使用碳纳米管12的离子产生元件5和用于输出施加电压以在离子产生元件5上印刷的电压电平设置电路2.基于由电压电平给出的施加电压 通过碳纳米管12产生高电场。基于在该高电场中通过场致发射由碳纳米管12发射的水分子与电子的碰撞和电离,产生离子。 版权所有(C)2005,JPO&NCIPI
    • 18. 发明专利
    • Discharge element
    • 放弃元素
    • JP2005135716A
    • 2005-05-26
    • JP2003369683
    • 2003-10-29
    • Kyocera Corp京セラ株式会社
    • TAKENOUCHI HIROSHI
    • B03C3/02B03C3/40B03C3/41B03C3/60C01B13/11H01T19/00H01T23/00
    • PROBLEM TO BE SOLVED: To solve a problem that in the conventional discharge element, moisture is condensed in a recessed part on the surface of porcelain and ammonium nitrate or the like is dissolved in the moisture, resulting in deterioration of durability. SOLUTION: A protective layer with a surface roughness Ra of 10μm or less is provided on the discharge element. Therefore, condensation of moisture on the surface of the protective layer is suppressed and the adhesion of ammonium nitrate to the protective layer is restricted, and a discharge element having a long life with high output is obtained. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题为了解决现有的放电元件的问题,水分在陶瓷表面的凹部被冷凝,硝酸铵等溶解在水分中,导致耐久性的劣化。 解决方案:在放电元件上设置表面粗糙度Ra为10μm以下的保护层。 因此,能够抑制保护层表面的水分冷凝,并且限制了硝酸铵对保护层的粘附,得到具有高输出寿命的放电元件。 版权所有(C)2005,JPO&NCIPI
    • 20. 发明专利
    • Dust collector
    • JP2004298660A
    • 2004-10-28
    • JP2003091188
    • 2003-03-28
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • KATO AKIRAIWAHASHI HIROSHIKAI TORU
    • B03C3/40B03C3/02B03C3/155B03C3/41B03C3/47B03C3/60
    • PROBLEM TO BE SOLVED: To solve such a problem that a moving distance for collecting dust is lengthened when a distance between positive and negative electrode plates is set to be large and the insulation between the electrode plates with different polarities can be hardly obtained when the distance between the positive and negative electrode plates is set to be small in an electric dust-collecting dust collector which is composed of a charging part comprising a discharge electrode and a counter electrode, a dust-collecting part comprising the positive and negative electrodes and a blower fan in order, and allows the dust introduced to the dust collector to be charged by breaking the insulation of air by means of corona discharge caused on the charging part and producing air ions and be removed in the dust-collecting part forming an electric field.
      SOLUTION: The dust collector having a simple structure and a high dust collecting performance is designed in such a manner that an insulating honeycomb with fine mesh is disposed between the positive and negative electrode plates of a dust collecting part and, thereby, the moving distance necessary for the dust collection is shortened.
      COPYRIGHT: (C)2005,JPO&NCIPI